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A Crystallographic Snapshot Of Tyrosine Trans-phosphorylation In Action

机译:酪氨酸反磷酸化作用的结晶快照

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Tyrosine trans-phosphorylation is a key event in receptor tyrosine kinase signaling, yet, the structural basis for this process has eluded definition. Here, we present the crystal structure of the FGF receptor 2 kinases caught in the act of trans-phosphorylation of Y769, the major C-terminal phosphorylation site. The structure reveals that enzyme- and substrate-acting kinases engage each other through elaborate and specific interactions not only in the immediate vicinity of Y769 and the enzyme active site, but also in regions that are as much of 18 A away from D626, the catalytic base in the enzyme active site. These interactions lead to an unprecedented level of specificity and precision during the trans-phosphorylation on Y769. Time-resolved mass spectrometry analysis supports the observed mechanism of trans-phosphorylation. Our data provide a molecular framework for understanding the mechanism of action of Kallmann syndrome mutations and the order of trans-phosphorylation reactions in FGFRs. We propose that the salient mechanistic features of Y769 trans-phosphorylation are applicable to trans-phosphorylation of the equivalent major phosphorylation sites in many other RTKs.
机译:酪氨酸反磷酸化是受体酪氨酸激酶信号转导中的关键事件,然而,该过程的结构基础尚不清楚。在这里,我们介绍了在主要的C末端磷酸化位点Y769的反磷酸化作用中捕获的FGF受体2激酶的晶体结构。该结构表明,不仅在Y769和酶活性位点的附近,而且在距D626距离D626约18 A的区域,酶和底物激酶都通过精细的特异性相互作用相互接合。酶活性位点的碱基。这些相互作用在Y769的反磷酸化过程中导致了前所未有的特异性和精确度。时间分辨质谱分析支持观察到的反式磷酸化机制。我们的数据为理解Kallmann综合征突变的作用机理以及FGFRs中的反磷酸化反应的顺序提供了分子框架。我们建议Y769反式磷酸化的显着机制特征适用于许多其他RTK中等效的主要磷酸化位点的反式磷酸化。

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